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抗噪单光子敏感三维成像器。

Noise-tolerant single photon sensitive three-dimensional imager.

机构信息

Department of Physics, Stevens Institute of Technology, 1 Castle Point Terrace, Hoboken, NJ, 07030, USA.

Center for Quantum Science and Engineering, Stevens Institute of Technology, 1 Castle Point Terrace, Hoboken, NJ, 07030, USA.

出版信息

Nat Commun. 2020 Feb 17;11(1):921. doi: 10.1038/s41467-020-14591-8.

Abstract

Active imagers capable of reconstructing 3-dimensional (3D) scenes in the presence of strong background noise are highly desirable for many sensing and imaging applications. A key to this capability is the time-resolving photon detection that distinguishes true signal photons from the noise. To this end, quantum parametric mode sorting (QPMS) can achieve signal to noise exceeding by far what is possible with typical linear optics filters, with outstanding performance in isolating temporally and spectrally overlapping noise. Here, we report a QPMS-based 3D imager with exceptional detection sensitivity and noise tolerance. With only 0.0006 detected signal photons per pulse, we reliably reconstruct the 3D profile of an obscured scene, despite 34-fold spectral-temporally overlapping noise photons, within the 6 ps detection window (amounting to 113,000 times noise per 20 ns detection period). Our results highlight a viable approach to suppress background noise and measurement errors of single photon imager operation in high-noise environments.

摘要

主动成像器能够在强背景噪声存在的情况下重建三维(3D)场景,这对于许多传感和成像应用来说是非常理想的。实现这一功能的关键是时间分辨光子探测,它可以区分真实信号光子和噪声。为此,量子参量模式排序(QPMS)可以实现远超典型线性光学滤波器的信噪比,在隔离时间和光谱重叠噪声方面具有出色的性能。在这里,我们报告了一种基于 QPMS 的 3D 成像器,具有出色的检测灵敏度和噪声容限。在 6ps 的检测窗口内,即使存在 34 倍光谱时间重叠的噪声光子(相当于每 20ns 检测周期内噪声为 113000 倍),我们仍能可靠地重建被遮挡场景的 3D 轮廓,仅用每个脉冲 0.0006 个检测到的信号光子。我们的研究结果突出了一种可行的方法,可以抑制单光子成像器在高噪声环境下的背景噪声和测量误差。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f7c/7026101/5b512fad8a48/41467_2020_14591_Fig1_HTML.jpg

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